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A novel method for non-invasively detecting the severity and location of aortic aneurysms

机译:一种非侵入性地检测主动脉瘤的严重程度和位置的新方法

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摘要

The influence of an aortic aneurysm on blood flow waveforms is well established, but how to exploit this link for diagnostic purposes still remains challenging. This work uses a combination of experimental and computational modelling to study how aneurysms of various size affect the waveforms. Experimental studies are carried out on fusiform-type aneurysm models, and a comparison of results with those from a one-dimensional fluid–structure interaction model shows close agreement. Further mathematical analysis of these results allows the definition of several indicators that characterize the impact of an aneurysm on waveforms. These indicators are then further studied in a computational model of a systemic blood flow network. This demonstrates the methods’ ability to detect the location and severity of an aortic aneurysm through the analysis of flow waveforms in clinically accessible locations. Therefore, the proposed methodology shows a high potential for non-invasive aneurysm detectors/monitors.
机译:主动脉瘤对血流波形的影响已被很好地确定,但是如何利用这种联系进行诊断仍然是一个挑战。这项工作结合了实验模型和计算模型来研究各种大小的动脉瘤如何影响波形。在梭状动脉瘤模型上进行了实验研究,将结果与一维流体-结构相互作用模型的结果进行了比较,结果表明两者之间有着密切的一致性。对这些结果进行进一步的数学分析,可以定义几个表征动脉瘤对波形影响的指标。然后,在系统性血流网络的计算模型中进一步研究这些指标。这证明了该方法通过分析临床可及位置的血流波形来检测主动脉瘤的位置和严重性的能力。因此,所提出的方法显示出非侵入性动脉瘤检测器/监测器的巨大潜力。

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